We report on a diode-pumped, monolithic and passively Q-switched microchip laser generating 200 ps pulses at a wavelength of 1064 nm with a repetition rate of up to 2 MHz. By varying the pump intensity we can change the repetition rate in the range from 100 kHz to 2 MHz and achieve pulse energies from 400 nJ to 130 nJ respectively, while still maintaining singe transversal and longitudinal mode operation. The microchip laser is based on Nd:YVO4 as the gain medium and a SESAM as the passive Q-switch. It is monolithically bonded with spin-on-glass as the bonding agent. The timing jitter was measured to be shorter than 40 ns for low and 2.5 ns for high repetition rates resulting in a relative timing jitter smaller than 1%. The output of this t...
In this contribution we present a novel concept to produce ultrashort pulses from a passively Q-swit...
The self-Q-switched laser performance of monolithic Cr4+.,Nd3+:YAG concave-planar resonator with 5-m...
International audienceWe present a novel Q-switched laser source using a micro-optical-electromechan...
We present a monolithic passively Q-switched microchip laser generating 200 ps pulses at a wavelengt...
We have demonstrated a compact and an efficient passively Q-switched microchip Nd:YVO4 laser by usin...
We present a passively Q-switched Nd:YVO4 crystal microchip laser with a 6 ps pulse width, which is ...
Abstract. We present a diode-pumped passively Q-switched Yb:YAG microchip laser, using a semiconduct...
Abstract We evaluate the design of Q-switched micro-chip lasers to examine the limit of their scalin...
the realization of high repetition rate passively Q-switched monolithic microlaser is a challenge si...
We report on nonlinear optical compression of passively Q-switched pulses accessing sub-10 ps domain...
International audiencethe realization of high repetition rate passively Q-switched monolithic microl...
We present the first passively Q-switched thulium microchip laser. The diode-pumped laser incorporat...
We report the amplification of a low-power 4-mW microchip Nd:YVO4 laser at 1064 nm, passively Q-swit...
We report the amplification of a low-power 4-mW microchip Nd:YVO4 laser at 1064 nm, passively Q-swit...
We present a novel concept to generate sub-picosecond pulses from a passively Q-switched Nd:YVO4 mic...
In this contribution we present a novel concept to produce ultrashort pulses from a passively Q-swit...
The self-Q-switched laser performance of monolithic Cr4+.,Nd3+:YAG concave-planar resonator with 5-m...
International audienceWe present a novel Q-switched laser source using a micro-optical-electromechan...
We present a monolithic passively Q-switched microchip laser generating 200 ps pulses at a wavelengt...
We have demonstrated a compact and an efficient passively Q-switched microchip Nd:YVO4 laser by usin...
We present a passively Q-switched Nd:YVO4 crystal microchip laser with a 6 ps pulse width, which is ...
Abstract. We present a diode-pumped passively Q-switched Yb:YAG microchip laser, using a semiconduct...
Abstract We evaluate the design of Q-switched micro-chip lasers to examine the limit of their scalin...
the realization of high repetition rate passively Q-switched monolithic microlaser is a challenge si...
We report on nonlinear optical compression of passively Q-switched pulses accessing sub-10 ps domain...
International audiencethe realization of high repetition rate passively Q-switched monolithic microl...
We present the first passively Q-switched thulium microchip laser. The diode-pumped laser incorporat...
We report the amplification of a low-power 4-mW microchip Nd:YVO4 laser at 1064 nm, passively Q-swit...
We report the amplification of a low-power 4-mW microchip Nd:YVO4 laser at 1064 nm, passively Q-swit...
We present a novel concept to generate sub-picosecond pulses from a passively Q-switched Nd:YVO4 mic...
In this contribution we present a novel concept to produce ultrashort pulses from a passively Q-swit...
The self-Q-switched laser performance of monolithic Cr4+.,Nd3+:YAG concave-planar resonator with 5-m...
International audienceWe present a novel Q-switched laser source using a micro-optical-electromechan...